Exploring quantum properties of bipartite mixed states under coherent and incoherent basis

Author:

Roy Sovik1ORCID,Bhattacharjee Anushree1,Radhakrishnan Chandrashekar2,Ali Md. Manirul3,Ghosh Biplab4

Affiliation:

1. Department of Mathematics, Techno Main Salt Lake (Engineering College), Techno India Group, EM 4/1, Sector V, Salt Lake, Kolkata 700091, India

2. Centre for Quantum Information, Communication and Computing (CQuICC), Indian Institute of Technology Madras, Chennai 600036, India

3. Centre for Quantum Science and Technology, Chennai Institute of Technology, Chennai 600069, India

4. Department of Physics, Vivekananda College for Women, Barisha, Kolkata 700008, India

Abstract

Quantum coherence and quantum entanglement are two different manifestations of the superposition principle. In this paper, we show that the right choice of basis to be used to estimate coherence is the separable basis. The quantum coherence estimated using the Bell basis does not represent the coherence in the system, since there is a coherence in the system due to the choice of the basis states. We first compute the entanglement and quantum coherence in the two-qubit mixed states prepared using the Bell states and one of the states from the computational basis. The quantum coherence is estimated using the [Formula: see text]-norm of coherence, the entanglement is measured using the concurrence and the mixedness is measured using the linear entropy. Then we estimate these quantities in the Bell basis and establish that coherence should be measured only in separable basis, whereas entanglement and mixedness can be measured in any basis. We then calculate the teleportation fidelity of these mixed states and find the regions where the states have a fidelity greater than the classical teleportation fidelity. We also examine the violation of the Bell-CHSH inequality to verify the quantum nonlocal correlations in the system. The estimation of the above-mentioned quantum correlations, teleportation fidelity and the verification of Bell-CHSH inequality is also done for bipartite states obtained from the tripartite systems by the tracing out of one of their qubits. We find that for some of these states’ teleportation is possible even when the Bell-CHSH inequality is not violated, signifying that nonlocality is not a necessary condition for quantum teleportation.

Publisher

World Scientific Pub Co Pte Ltd

Subject

Physics and Astronomy (miscellaneous)

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Non-maximally Entangled Mixed States of X and Non-X Types as Teleportation Channels;International Journal of Theoretical Physics;2024-05-02

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